鞣花酸的添加提高了贵州黑山羊的免疫能力,延缓了卵巢颗粒细胞的凋亡

IF 1.4 4区 农林科学 Q2 Agricultural and Biological Sciences
Xiaoyan Wen, Mingshuai Zhou, Qingmei Lu, Bin Liu, Xiaoli Shi, Jiafu Zhao
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However, the effects of EA on immunity and the anti-apoptotic ability of ovarian granulosa cells (GCs) are still unclear.Aims The aim of this study was to analyse the effects of different concentrations of EA on the immune and anti-apoptotic ability of ovarian GCs of Guizhou black goats.Methods In this study, different concentrations of EA (0, 50, 100, 150, 200μmol/L) were added to the culture of ovarian GCs in vitro, and Cell-Counting Kit 8 (CCK8) assay, cell wound scratch assay, and real-time fluorescence quantitative polymerase chain reaction (RT–qPCR) assay were used to detect the effects of different concentrations of EA on the proliferation, migration, and reproductive marker genes of ovarian GCs. 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引用次数: 0

摘要

卵泡发育在雌性哺乳动物的生长和繁殖中起着重要作用。鞣花酸作为一种天然抗氧化剂,已被用于猪精液的冷冻保护。然而,EA对卵巢颗粒细胞(GCs)免疫和抗凋亡能力的影响尚不清楚。目的研究不同浓度EA对贵州黑山羊卵巢GCs免疫及抗凋亡能力的影响。方法在体外培养的卵巢GCs中加入不同浓度的EA(0、50、100、150、200μmol/L),采用细胞计数试剂盒8 (CCK8)法、细胞伤口划痕法和实时荧光定量聚合酶链反应(RT-qPCR)法检测不同浓度EA对卵巢GCs增殖、迁移和生殖标记基因的影响。然后选择EA的最佳添加浓度,在最佳添加浓度的基础上,采用RT-qPCR、酶联免疫吸附试验(ELISA)、ROS和western blotting检测EA添加对免疫因子、细胞色素P450家族19亚家族A成员1基因(CYP19A1)、雌二醇浓度、细胞内活性氧浓度和凋亡相关蛋白表达的影响。CCK8实验和细胞划痕实验结果显示,与对照组相比,EA的加入能显著抑制卵巢GCs的增殖和迁移能力,且随着浓度的增加出现剂量效应。RT-qPCR结果显示,不同浓度的EA显著增加了骨形态发生蛋白15 (BMP15)、骨形态发生蛋白受体1B (BMPR-1B)、生长分化因子9 (GDF9)和促卵泡激素β亚基(FSHβ)等生殖相关基因的表达;进一步分析,以150μmol/L EA为最优浓度时,与对照组相比,添加EA后CYP19A1、白细胞介素-10 (IL-10)和超氧化物歧化酶(SOD2)的表达显著增加,IL-8的表达显著降低。ELISA和ROS结果显示,细胞内和细胞外雌二醇浓度均高于对照组,而ROS浓度显著低于对照组。Western blotting结果显示,150μmol/L EA显著降低了Caspase-3和Caspase-9的表达以及bcl2相关X: b细胞淋巴瘤-2的比例。结论添加150μmol/L EA可显著提高山羊胃GC免疫,延缓胃GC细胞凋亡。EA的加入还增加了GCs中BMP15、BMPR-1B、GDF9、FSHβ和CYP19A1的表达,促进了雌二醇的分泌。这些结果为进一步研究EA对山羊卵母细胞体外成熟发育的影响提供了初步的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Addition of ellagic acid improved the immune ability and delayed the apoptosis of ovarian granulosa cells of Guizhou black goat
Context Follicular development plays an important role in the growth and reproduction of female mammals. Ellagic acid (EA), as a natural antioxidant, has been used in freezing protection of pig semen. However, the effects of EA on immunity and the anti-apoptotic ability of ovarian granulosa cells (GCs) are still unclear.Aims The aim of this study was to analyse the effects of different concentrations of EA on the immune and anti-apoptotic ability of ovarian GCs of Guizhou black goats.Methods In this study, different concentrations of EA (0, 50, 100, 150, 200μmol/L) were added to the culture of ovarian GCs in vitro, and Cell-Counting Kit 8 (CCK8) assay, cell wound scratch assay, and real-time fluorescence quantitative polymerase chain reaction (RT–qPCR) assay were used to detect the effects of different concentrations of EA on the proliferation, migration, and reproductive marker genes of ovarian GCs. Then the optimal addition concentration of EA was selected and the effects of EA supplementation on immune factors, cytochrome P450 family 19 subfamily A member 1 gene (CYP19A1), estradiol concentrations, intracellular reactive oxygen species concentrations, and apoptosis-related protein expression were detected by RT–qPCR, enzyme-linked immunosorbent assay (ELISA), ROS, and western blotting on the basis of the optimal addition concentration.Key results The CCK8 test and cell scratch test showed that the addition of EA could significantly inhibit the proliferation and migration ability of ovarian GCs compared with the control group, and a dose effect was observed with the increase in concentration. RT–qPCR results showed that different concentrations of EA significantly increased the expression of genes associated with reproduction, including bone morphogenetic protein 15 (BMP15), bone morphogenetic protein receptor 1B (BMPR-1B), growth differentiation fFactor 9 (GDF9), and follicle-stimulating hormone β subunit (FSHβ), and the maximum increase was observed at 150μmol/L EA. Further analyses using 150μmol/L EA as the optimal concentration showed significantly increased expressions of CYP19A1, interleukin-10 (IL-10), and superoxide dismutase (SOD2) after EA supplementation, while the expression of IL-8 was significantly decreased compared with those of the control group. ELISA and ROS showed that both intracellular and extracellular estradiol concentrations were higher, while ROS concentrations were significantly lower than those in the control group. Western blotting results showed that 150μmol/L EA significantly decreased the expression of Caspase-3 and Caspase-9 and the ratio of BCL2-associated X:B-cell lymphoma-2.Conclusions The supplementation of 150μmol/L EA had significant effects on improving GC immunity and delaying GC apoptosis in goats. The addition of EA also increased the expression of BMP15, BMPR-1B, GDF9, FSHβ, and CYP19A1 and promoted the secretion of estradiol in GCs.Implications These results provided a preliminary lead for further research on the effect of EA on the maturation and development of goat oocytes in vitro.
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来源期刊
Animal Production Science
Animal Production Science Agricultural and Biological Sciences-Food Science
CiteScore
3.00
自引率
7.10%
发文量
139
审稿时长
3-8 weeks
期刊介绍: Research papers in Animal Production Science focus on improving livestock and food production, and on the social and economic issues that influence primary producers. The journal (formerly known as Australian Journal of Experimental Agriculture) is predominantly concerned with domesticated animals (beef cattle, dairy cows, sheep, pigs, goats and poultry); however, contributions on horses and wild animals may be published where relevant. Animal Production Science is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.
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